首页> 美国卫生研究院文献>Wiley-Blackwell Online Open >Ornithine cyclodeaminase/μ-crystallin homolog from the hyperthermophilic archaeon Thermococcus litoralis functions as a novel Δ1-pyrroline-2-carboxylate reductase involved in putative trans-3-hydroxy-l-proline metabolism
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Ornithine cyclodeaminase/μ-crystallin homolog from the hyperthermophilic archaeon Thermococcus litoralis functions as a novel Δ1-pyrroline-2-carboxylate reductase involved in putative trans-3-hydroxy-l-proline metabolism

机译:嗜热古生鸟氨酸鸟氨酸环脱氨酶/μ-晶状蛋白同源物起新型推定的反-3-羟基-1-脯氨酸代谢的Δ1-吡咯啉-2-羧酸还原酶的作用

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摘要

l-Ornithine cyclodeaminase (OCD) is involved in l-proline biosynthesis and catalyzes the unique deaminating cyclization of l-ornithine to l-proline via a Δ1-pyrroline-2-carboxyrate (Pyr2C) intermediate. Although this pathway functions in only a few bacteria, many archaea possess OCD-like genes (proteins), among which only AF1665 protein (gene) from Archaeoglobus fulgidus has been characterized as an NAD+-dependent l-alanine dehydrogenase (AfAlaDH). However, the physiological role of OCD-like proteins from archaea has been unclear. Recently, we revealed that Pyr2C reductase, involved in trans-3-hydroxy-l-proline (T3LHyp) metabolism of bacteria, belongs to the OCD protein superfamily and catalyzes only the reduction of Pyr2C to l-proline (no OCD activity) [FEBS Open Bio (2014) >4, 240–250]. In this study, based on bioinformatics analysis, we assumed that the OCD-like gene from Thermococcus litoralis DSM 5473 is related to T3LHyp and/or proline metabolism (TlLhpI). Interestingly, TlLhpI showed three different enzymatic activities: AlaDH; N-methyl-l-alanine dehydrogenase; Pyr2C reductase. Kinetic analysis suggested strongly that Pyr2C is the preferred substrate. In spite of their similar activity, TlLhpI had a poor phylogenetic relationship to the bacterial and mammalian reductases for Pyr2C and formed a close but distinct subfamily to AfAlaDH, indicating convergent evolution. Introduction of several specific amino acid residues for OCD and/or AfAlaDH by site-directed mutagenesis had marked effects on both AlaDH and Pyr2C reductase activities. The OCC_00387 gene, clustered with the TlLhpI gene on the genome, encoded T3LHyp dehydratase, homologous to the bacterial and mammalian enzymes. To our knowledge, this is the first report of T3LHyp metabolism from archaea.
机译:鸟氨酸环脱氨酶(OCD)参与了l-脯氨酸的生物合成,并通过Δ 1 -吡咯啉-2-羧酸酯(Pyr2C)中间体催化了L-鸟氨酸到L-脯氨酸的独特脱氨基环化反应。尽管该途径仅在少数细菌中起作用,但是许多古细菌具有类似于OCD的基因(蛋白质),其中仅来自古细菌的AF1665蛋白质(基因)被表征为NAD + 依赖性l-。丙氨酸脱氢酶(AfAlaDH)。然而,来自古细菌的OCD样蛋白的生理作用尚不清楚。最近,我们揭示了参与细菌反式-3-羟基-1-脯氨酸(T3LHyp)代谢的Pyr2C还原酶属于OCD蛋白超家族,仅催化Pyr2C还原为L-脯氨酸(无OCD活性)[FEBS Open Bio(2014)> 4 ,240-250]。在这项研究中,基于生物信息学分析,我们假设来自利特尔热球菌DSM 5473的OCD样基因与T3LHyp和/或脯氨酸代谢(TlLhpI)相关。有趣的是,TlLhpI显示出三种不同的酶活性:AlaDH; N-甲基-1-丙氨酸脱氢酶; Pyr2C还原酶。动力学分析强烈表明,Pyr2C是优选的底物。尽管TlLhpI具有相似的活性,但它们与Pyr2C的细菌和哺乳动物还原酶之间的亲缘关系较差,并与AfAlaDH形成了紧密但独特的亚家族,表明其进化趋同。通过定点诱变为OCD和/或AfAlaDH引入几个特定的​​氨基酸残基对AlaDH和Pyr2C还原酶活性都有明显的影响。 OCC_00387基因在基因组上与TlLhpI基因聚在一起,编码与细菌和哺乳动物酶同源的T3LHyp脱水酶。据我们所知,这是古细菌中T3LHyp代谢的首次报道。

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